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Updated: Aug 8, 2026

Isolation of Human Umbilical Vein Endothelial Cells and Their Use in the Study of Neutrophil Transmigration Under Flow Conditions
Published on: August 8, 2012
Desmoplakin expression and organization at human umbilical vein endothelial cell-to-cell junctions
O Valiron1, V Chevrier, Y Usson
1CEA, Laboratoire d'Hematologie, INSERM U217, Grenoble, France.
Insights
Desmoplakin, a key protein in cell adhesion, is found in endothelial cells, linking intermediate filaments to cell junctions. This suggests a role in organizing endothelial cell-cell interactions.
Area of Science:
- Cell Biology
- Molecular Biology
- Endothelial Cell Research
Background:
- Desmoplakin is a crucial component of desmosomes, anchoring intermediate filaments.
- Endothelial cells form critical barriers but their junctional components are not fully understood.
Purpose of the Study:
- To investigate the presence and function of desmoplakin in human umbilical vein endothelial cells.
- To explore desmoplakin's role in endothelial cell adhesion and cytoskeletal organization.
Main Methods:
- Western blotting to detect desmoplakin I and II protein levels.
- Immunofluorescence confocal microscopy to visualize protein localization.
- Analysis of mRNA expression and protein solubility.
Main Results:
- Desmoplakin I and II are expressed at mRNA and protein levels in endothelial cells, even without desmosomes.
- Desmoplakin is primarily found in the detergent-insoluble fraction, associated with the cytoskeleton.
- Desmoplakin co-localizes with VE-cadherin and plakoglobin at lateral cell membranes and interacts with vimentin.
Conclusions:
- Desmoplakin contributes to the molecular organization of interendothelial junctions.
- It may play a role in linking VE-cadherin and vimentin, potentially forming a novel type of endothelial junction.
Abstract:
Desmoplakin is an intracellular component of desmosomes which plays a role in the anchorage of intermediate filaments to these structures. We report here that, despite the absence of desmosomes, cultured endothelial cells from human umbilical vein express desmoplakin I and II both at mRNA and protein level. Desmoplakin I/II are found only in the detergent insoluble fraction suggesting that most of the protein is linked to the cytoskeleton. Desmoplakin I/II could be detected by western blot only in long confluent cells even if desmoplakin mRNA levels are unchanged by cell confluency. This suggests that desmoplakin might be stabilized at protein level by its association with junctional components. Immunofluorescence confocal microscopy showed that desmoplakin codistributes with VE-cadherin and plakoglobin along the lateral cell membrane. In contrast, desmoplakin localization was distinct from that of PECAM, an endothelial specific junctional protein localized outside adherence junctions. Endothelial cells do not have keratins but they express vimentin. In confluent cells vimentin forms peripheral filaments which attach to the cell membrane in areas at desmoplakin localization. These data suggest that desmoplakin may participate in the molecular organization of interendothelial junctions by interacting with VE-cadherin and promoting vimentin anchorage. This new type of intercellular junction seems to correspond to the "complexus adhaerentes' described in vivo in lymphatic endothelium.
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